Cano Raul De Jesus, Daniels Judith M, Carlin Martha, Huber Don
Biological Sciences Department, California Polytechnic State University, San Luis Obispo, CA 93407, USA.
Ancient Organics Bioscience, San Luis Obispo, CA 93405, USA.
Microorganisms. 2025 Jul 11;13(7):1638. doi: 10.3390/microorganisms13071638.
Soil degradation and declining fertility threaten sustainable agriculture and crop productivity. This study evaluates the effects of CFMI-8, a co-fermented microbial inoculant comprising eight bacterial strains selected through genomic and metabolic modeling, on soil health, nutrient availability, and corn performance. Conducted in a randomized complete block design at Findlay Farm, Wisconsin, the field trial assessed soil biological activity, nutrient cycling, and crop yield responses to CFMI-8 treatment. Treated soils exhibited significant increases in microbial organic carbon (+224.1%) and CO respiration (+167.1%), indicating enhanced microbial activity and organic matter decomposition. Improvements in nitrate nitrogen (+20.2%), cation exchange capacity (+23.1%), and potassium (+27.3%) were also observed. Corn yield increased by 28.6%, with corresponding gains in silage yield (+9.6%) and nutritional quality. Leaf micronutrient concentrations, particularly iron, manganese, boron, and zinc, were significantly higher in treated plants. Correlation and Random Forest analyses identified microbial activity and nitrogen availability as key predictors of yield and nutrient uptake. These results demonstrate CFMI-8's potential to enhance soil fertility, promote nutrient cycling, and improve crop productivity under field conditions. The findings support microbial inoculants as viable tools for regenerative agriculture and emphasize the need for long-term studies to assess sustainability impacts.
土壤退化和肥力下降威胁着可持续农业和作物生产力。本研究评估了CFMI - 8的效果,CFMI - 8是一种通过基因组和代谢建模筛选出的包含八种细菌菌株的复合发酵微生物接种剂,研究其对土壤健康、养分有效性和玉米生长表现的影响。该田间试验在威斯康星州芬德利农场采用随机完全区组设计进行,评估了土壤生物活性、养分循环以及作物产量对CFMI - 8处理的响应。处理后的土壤微生物有机碳显著增加(+224.1%),CO呼吸显著增强(+167.1%),表明微生物活性和有机物分解得到增强。同时还观察到硝态氮(+20.2%)、阳离子交换容量(+23.1%)和钾(+27.3%)有所改善。玉米产量提高了28.6%,青贮产量(+9.6%)和营养品质也相应增加。处理后的植株叶片微量营养元素浓度,特别是铁、锰、硼和锌,显著更高。相关性分析和随机森林分析确定微生物活性和氮有效性是产量和养分吸收的关键预测指标。这些结果表明CFMI - 8在田间条件下具有增强土壤肥力、促进养分循环和提高作物生产力的潜力。研究结果支持将微生物接种剂作为再生农业的可行工具,并强调需要进行长期研究以评估其对可持续性的影响。